从纳米结构到片状相:中熵Alnbv合金到高熵Alnbvcrti合金的导热性降低

Meng-Jie Jhong, I-Lun Jen, Kuang‐Kuo Wang, Wan-ting Yen, Jacob C. Huang, J. Jang, K. Hsieh, Hsin-jay Wu
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摘要

近年来,高熵合金的出现给金属材料带来了新的发展,打破了传统合金的界限。随着HEAs的发展,由两到四个主要元素组成的中熵合金(MEAs)也显示出较低成分复杂性的优异性能。其中,中熵AlNbV合金由于存在可溶Al、Nb和V元素的体心立方(BCC)固溶体而备受关注。在此,我们构建了Al-Nb-V体系的相图,并定义了在1073 K或1273 K下经过后退火的热平衡三元合金的平衡均匀性。同时,相图和导热系数κ图谱的叠加表明,BCC固溶体和纳米AlNb2的共存降低了κ。在Ti和Cr的掺入下,由Laves C14相和BCC固溶体组成的HEA AlNbVCrTi在323 ~ 723 K内达到了6 ~ 10 Wm-1K-1的超低κ值。
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From Nano-Structure to Laves Phase: Reduced Thermal Conductivity from Medium-Entropy Alnbv to High-Entropy Alnbvcrti Alloys
In recent years the emerge of high-entropy alloys (HEAs) imposes an evolution in metallic materials, which breaks the boundaries set by the traditional alloys. Alongside the development of HEAs, the medium-entropy alloys (MEAs), which comprise two to four majority elements, also reveal the outperforming properties with less compositional complexity. Among them, the medium-entropy AlNbV alloys attract great attention owing to the existence of a body-centered cubic (BCC) solid solution that contains soluble Al, Nb, and V elements. Herein, we construct the phase diagrams for the Al-Nb-V system and define the equilibrium homogeneity by thermally-equilibrated ternary alloys underwent a post-annealing at 1073 K or 1273 K. Meanwhile, a superposition of phase diagram and thermal conductivity κ mapping suggests that the coexistence of BCC solid solution and nano-grained AlNb2 brings down the κ. With the incorporation of Ti and Cr, the HEA AlNbVCrTi, which is composed of Laves C14 phase and BCC solid solution, achieves an ultralow κ of 6 – 10 Wm-1K-1 within 323 – 723 K.
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